The present invention relates to a telecommunications termination panel with a housing including a front opening and a rear opening. Pivotably mounted within the housing is a tray within the front opening, pivoting about a vertical axis located adjacent a first side of the housing. A cable path is defined along a bottom of the housing along the first side between the cable entry of the tray and the rear opening. A movable plate is positioned adjacent the first side and is movable between a first position defining an upper limit of the cable path when the tray is closed and a second position allowing access to the cable path when the tray is open. The movement of the plate between the first and second positions is actuated by the movement of the tray between the closed and open positions. The present invention further relates to a telecommunications termination panel with a housing including a front opening. Pivotably mounted within the housing is a tray within the front opening, pivoting about a vertical axis located adjacent a first side of the housing. The tray is pivotable between an open position and a closed position. The tray includes a cover which can be moved between an operational position and an access position when the tray is in the open position. With the cover in the operational position, the tray is prevented from moving from the open position to the closed position.
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22. A telecommunications device comprising:
a first component that defines a cable path;
a second component to which cables positioned along the cable path are routed, the second component being moveable between a first position where the second component is within the first component and a second position where the second component is outside the first component; and
a cable keeper positioned adjacent to the cable path, the cable keeper being operatively coupled to the second component such that the cable keeper moves toward a cable confining position when the second component is moved toward the first position, and moves toward a cable access position when the second component is moved toward the second position.
1. A telecommunications termination panel comprising:
a housing including a top, a bottom, a first side and a second opposing side defining a front opening and a rear opening;
a tray pivotably mounted within the front opening of the housing, pivoting about a vertical axis located adjacent the first side and including a cable entry adjacent the axis of pivot and a plurality of connection locations, the tray movable between an open position and a closed position;
the rear opening adjacent the first side;
a cable path defined along the bottom of the housing, along the first side between the cable entry of the tray and the rear opening;
a movable plate above the cable path, the plate movable between a first lowered position when the tray is closed and a second raised position when the tray is open, and the movement of the plate between the first and second positions is actuated by the movement of the tray between the closed and open positions; and,
wherein the movable plate in the first position defines an upper limit to the cable path beneath the tray and the movable plate in the second position is raised above the cable path to permit placement of cables within the cable path.
14. A telecommunications termination panel comprising:
a housing including a top, a bottom, a first side and a second opposing side defining a front opening;
a tray pivotably mounted within the front opening of the housing, pivoting about a vertical axis located adjacent the first side and including a cable entry adjacent the axis of pivot and a plurality of connection locations, the tray movable between an open position and a closed position;
the tray including perimeter, a wall extending upward adjacent the perimeter to enclose the plurality of connector locations, a first portion of the wall closing the front opening when the tray is in the closed position, and a cover hingedly mounted to a second portion of the wall opposite the first portion;
the cover movable between an access position and an operational position when the tray is in the open position, only the operational position of the cover allowing the tray to move from the open position to the closed position, the access position allowing access to the connection locations and to cables extending to or away from the connection locations, and the cover in the access position preventing the tray from moving from the open to the closed position.
2. The telecommunications termination panel of
3. The telecommunications termination panel of
4. The telecommunications termination panel of
5. The telecommunications termination panel of
6. The telecommunications termination panel of
7. The telecommunications termination panel of
8. The telecommunications termination panel of
9. The telecommunications termination panel of
10. The telecommunications termination panel of
11. The telecommunications termination panel of
12. The telecommunications termination panel of
13. The telecommunications termination panel of
15. The telecommunications termination panel of
16. The telecommunications termination panel of
17. The telecommunications termination panel of
18. The telecommunications termination panel of
19. The telecommunications termination panel of
20. The telecommunications termination panel of
21. The telecommunications termination panel of
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The present invention relates generally to telecommunications termination panels with pivoting bulkheads.
In telecommunications infrastructure installations, equipment for switching, cross-connecting and inter-connecting a variety of panels is used. Many of these panels are installed in telecommunications equipment racks to permit organized, high-density installations to be achieved in limited space available for equipment. Due to the increasing demand for telecommunications system capacity, it is desirable to increase the density of connections within a given space that can be achieved. Commensurate with the demand for increased capacity from the same installation footprint is a desire to improve the organization and handling of the cables used to link the equipment within the installation and the outside plant and facilities cables.
One approach to increasing the density of connections within the same footprint is to increase the number of connections supported within a given panel. Access to these connections within panels of higher densities is necessary for the installation, operation and maintenance of the panels. Preferably, access to any one connection within a panel will not cause unnecessary strain on cables extending from other adjacent connections. Modification of the layout of the interior of these panels to improve connector access is desirable.
In commonly assigned and related application Ser. No. 10/277,606, filed on Oct. 21, 2002, a panel with a variety of improvements to the density of connections within the panel and access thereto was described. The disclosure of this application is incorporated herein by reference. Additional improvements to the panels of this earlier application are desirable.
The present invention relates to a telecommunications termination panel with a housing including a front opening and a rear opening. Pivotably mounted within the housing is a tray within the front opening, pivoting about a vertical axis located adjacent a first side of the housing. The tray includes a cable entry adjacent the axis of pivot and a plurality of connection locations and is movable between an open position and a closed position. The rear opening is adjacent the first side of the housing and a cable path is defined along a bottom of the housing along the first side between the cable entry of the tray and the rear opening. A movable plate is positioned adjacent the first side and is movable between a first position when the tray is closed and a second position when the tray is open. The movement of the plate between the first and second positions is actuated by the movement of the tray between the closed and open positions. The movable plate in the first position defines an upper limit to the cable path beneath the tray and the movable plate in the second position is raised above the cable path to permit placement of cables within the cable path.
The present invention further relates to a telecommunications termination panel with a housing including a front opening and a tray pivotably mounted within the front opening. The tray pivots about a vertical axis located adjacent the first side and including a cable entry adjacent the axis of pivot and a plurality of connection locations. The tray is movable between an open position and a closed position. The tray includes perimeter and a wall extending upward adjacent the perimeter to enclose the plurality of connector locations. A first portion of the wall closes the front opening of the housing when the tray is in the closed position, and a cover is hingedly mounted to a second portion of the wall opposite the first portion. The cover is movable between an access position and an operational position when the tray is in the open position. The operational position of the cover allows the tray to move from the open position to the closed position and also allows a user access to the connection locations and to cables extending to or away from the connection locations. When the cover is in the access position, the tray is prevented from moving from the open to the closed position.
The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate several aspects of the present invention and together with the description, serve to explain the principles of the invention. A brief description of the drawings is as follows:
Reference will now be made in detail to the exemplary aspects of the present invention that are illustrated in the accompanying drawings. Wherever possible, the same reference numbers will be used throughout the drawings to refer to the same or like parts.
Referring now to the FIGS., telecommunications connections panels 10 provide a plurality of connection locations for linking telecommunications cables within a single panel. These panels 10 may electrically connect copper cables or optically connect optical fiber cables at these connection locations. Such a panel 10 is shown in
Referring now to
Referring now to
Sides 24 and 28 include flanges 44 for mounting top 31 to panel 10. Bottom 30 includes a rear mounting flange 46 so that a rear wall (not shown) can be mounted to substantially close off rear opening 34. Sides 24 and 28 also include mounting brackets 48 along an outer side to aid in mounting panel 10 to rack 12.
Referring now to
Cable access port 54 includes a pair of opposing bend radius protection curves 56 to ensure that cable 50 (or any other optical fiber cables extending into panel 10 through port 54) are not bend through too tight of a curve as the cables enter port 54. Each curve 56 includes a finger 58 positioned with respect to each other to permit cable 50 to be laid between curves 56 and prevent cable 50 from extending above curves 56. Tray 36 includes a raised floor 60 which is positioned above curves 56, fingers 58 and cable 50. Raised floor 60 cooperates with side 24 and bottom 30 to define a cable path 62. Cable path 62 permits cable 50 to extend through cable access port 54 and into panel 10 along bottom 30 and side 24 in the direction of hinge 42.
Referring now to
Referring now to
Tray 36 includes a plurality of bulkheads 82 along the sides and rear of tray 36, and a central bulkhead 76 separating area 74 from the area above raised floor 60. Bulkheads 82 and 76 cooperate to organize optical fibers 14 and keep optical fibers 14 within tray 36 as tray 36 is swung from the open position shown in
Referring now to
Similarly, cables 18 from the front of adapters 16 extend around fingers 20 and forward of outer wall 66 to exit through opening 22 which is also positioned as close as possible to hinge 42. This relative location helps reduce the amount of slack required in cables 18 to permit unhindered movement of tray 36.
When working with optical fibers within a telecommunications panel, it is desirable that direct viewing down the axis of any optical fibers be avoiding. Exposure to the high intensity laser light transmitted through optical fibers can cause significant harm to the vision of a worker subjected to accidental exposure. Orientation of the fiber within a panel or other device so that the axis of the fibers and any adapters is directed away from where a worker would be standing is desirable. Referring now to
As disclosed in U.S. patent application Ser. No. 09/991,271, and as shown in
Tray 36 includes a floor 94 above which is a second raised floor 96 within area 74 adjacent the rear of adapters 16. As described above, raised floor 60 is offset above bottom 30 of panel 10 and cable path 62 is defined between raised floor 60 and bottom 30 adjacent side 24. Drums 70 and 72 are mounted to raised floor 96, a portion of which extends over raised floor 60. Raised floor 96 includes a ramp 100 extending down to the full depth of floor 94 and leading from area 74 to the rear of adapters 16. Forward of adapters 16 is a transition piece 98, to which are mounted the fingers 20. Cables 18 from the front of adapters 16 extend through and around fingers 20, forward of outer wall 66 and through opening 22 in side 24.
Panel 10 and panel 110 may be configured so that either will accept a multi-strand optical fiber cable such as cable 50 or single strand optical fiber cables such as cables 118 through cable access port 54. The presence of the features such as anchor 68 and first drum 70 for cables 50 do not impair the ability of panel 10 to accept and direct cables 118 to the rear of adapters 16.
Referring now to
Clamp 112 permits loading of cables 118 into panel 110 without the need to extend an arm through the interior of panel 110. When tray 36 is in the closed position, as shown in
It is anticipated that panels 10 and 110 may modified to provide connection locations for high speed copper cables as well as optical fiber cables. As copper cables are used to transmit data at higher speed, bend radius rules similar to those for optical fiber cables need to be enforced within the network. As with optical fiber, it is desirable to have higher densities of connections within copper panels as well.
Referring now to
Referring now to
Referring now to
Referring now to
Referring now to
Opening 224 is also configured and positioned so as to prevent any cables connected to the rear of the upper most adapters 16 of the extended module 17 from being pinched or otherwise damaged when cover 212 interacts with the extended module 17. In the absence of opening 224 configured and positioned as shown, such a cable would be struck by cover 212 before cover 212 strikes the extended module 17. The pressure of cover 212 could cause the cable to kink or bend tighter than the desired bend radius and possibly degrade the ability of the cable to transmit optical signals.
Referring now to
Shown in
Referring now to
Referring now to
Referring now to
Referring now to
Referring now to
Referring now to
Alternative configurations of links 234 are anticipated and may include an attachment point 244 for actuator 232 positioned above fastener 236 pivotably connecting link 234 to side 24. Relative placement of the pivotable attachment of links 234 to side 24 and plate 238 with regard to the position of attachment point 244 may be varied to alter the extent of vertical and horizontal displacement of plate 238 and the timing of the displacement relative to the movement of tray 136.
The various embodiment described above refer to optical fiber cables. It is understood that a telecommunications termination panel according to the present invention may be configured for copper cables or other similar cables.
The above specification, examples and data provide a complete description of the manufacture and use of the invention. Since many embodiments of the invention can be made without departing from the spirit and scope of the invention, the invention resides in the claims hereinafter appended.
Knudsen, Clinton M., Follingstad, Michael J., Mertesdorf, Daniel Ray, Durand, David Anthony
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